A mobile device-to-http protocol gateway (MHG, or “MO Gateway”) which translates between wireless Mobile Originated commands from an SMSC, and an application server on the internet (i.e., a “web IP Server”). A wireless internet gateway establishes communications with one or more relevant SMSCs using standard format smpp commands, and the MHG utilizes http protocol post messages to post short messages originated at the mobile device to a particular URL. Return results are received by the MHG via http protocol messages, translated to smpp messages, and forwarded back to the SMSC for delivery to the mobile device. The wireless internet gateway communicates with the MHG using RMI protocol commands. An MHG in accordance with the principles of the present invention enables a developer to create mobile applications using standard web development tools, e.g., Java Servlets. The MHG allows standard format command messages to be used throughout the pathway between a mobile device and an application program on a web IP server at a particular URL.

Patent
   6891811
Priority
Jun 06 2000
Filed
Jun 06 2000
Issued
May 10 2005
Expiry
Dec 07 2022
Extension
914 days
Assg.orig
Entity
Large
89
149
all paid
27. A mobile to http gateway, comprising:
an smpp relayer;
a message director to process messages from said smpp relayer;
a poster collector to obtain at least one target poster;
a poster to convert an smpp message into an http protocol post message; and
a poster to convert an http protocol post message into an smpp message.
1. A gateway, comprising:
a first communication path to accept a short message from a short message service center;
a translation module to insert said short message into an http protocol message; and
a second communication path to transmit said http protocol message to at least one URL;
wherein said gateway facilitates two-way short message service communication between a short message service device and an http device.
9. A method of communicating between a wireless device and an application program on an internet protocol server, comprising:
sending a short message from said wireless device to said internet protocol server;
routing said short message using a wireless protocol message;
conveying said short message from said wireless device to said internet protocol server using an http protocol post message; and
returning data back to said wireless device from said internet protocol server through an http stream established with said http protocol post message.
19. Apparatus for communicating between a wireless device and an application program on an internet protocol server, comprising:
means for sending a short message from said wireless device to said internet protocol server;
means for routing said short message using an smpp protocol message;
means for conveying said short message from said wireless device to said internet protocol server using an http protocol post message; and
means for returning data back to said wireless device from said internet protocol server through an http stream established with said http protocol post message.
2. The gateway according to claim 1, wherein:
said http protocol message is a post message.
3. The gateway according to claim 1, wherein:
said short message originated from a wireless device.
4. The gateway according to claim 1, wherein:
said short message is received via an RMI callback mechanism.
5. The gateway according to claim 1, wherein:
said second communication path is adapted to transmit said http protocol message to a plurality of URLs.
6. The gateway according to claim 1, wherein:
said second communication path accepts return results from said URL;
said translation module inserts said return results into a short message; and
said first communication path transmits said short message to said short message service center.
7. The gateway according to claim 6, wherein:
said return results conform to http protocols.
8. The gateway according to claim 6, wherein:
said first communication path transmits a SUBMIT_SM message to said short message servicing center.
10. The method of communicating between a wireless device and an application program on an internet protocol server according to claim 9, wherein:
said wireless protocol is smpp.
11. The method of communicating between a wireless device and an application program on an internet protocol server according to claim 9, wherein:
said wireless protocol is ReFlex.
12. The method of communicating between a wireless device and an application program of an internet protocol server according to claim 9, wherein:
said smpp protocol message is a DELIVER_SM message.
13. The method of communicating between a wireless device and an application program of an internet protocol server according to claim 9, further comprising:
forwarding said routed short message to a gateway using an RMI callback mechanism.
14. The method of communicating between a wireless device and an application program of an internet protocol server according to claim 9, wherein:
said short message is sent to a predefined address.
15. The method of communicating between a wireless device and an application program of an internet protocol server according to claim 9, wherein:
said short message is conveyed to a plurality of internet protocol servers using respective http protocol post messages.
16. The method of communicating between a wireless device and an application program of an internet protocol server according to claim 9, further comprising:
routing said return data from said http stream to a short message service center using an smpp protocol message.
17. The method of communicating between a wireless device and an application program of an internet protocol server according to claim 16, wherein:
said smpp protocol message is a SUBMIT_SM message.
18. The method of communicating between a wireless device and an application program of an internet protocol server according to claim 17, further comprising:
conveying said return data from said short message service center to a wireless device using an IS-41 protocol message.
20. The apparatus for communicating between a wireless device and an application program of an internet protocol server according to claim 19, wherein:
said smpp protocol message is a DELIVER_SM message.
21. The apparatus for communicating between a wireless device and an application program of an internet protocol server according to claim 19, further comprising:
means for forwarding said routed short message to a gateway using an RMI callback mechanism.
22. The apparatus for communicating between a wireless device and an application program of an internet protocol server according to claim 19, wherein:
said means for sending sends said short message to a predefined address.
23. The apparatus for communicating between a wireless device and an application program of an internet protocol server according to claim 19, wherein:
said means for conveying conveys said short message to a plurality of internet protocol servers using respective http protocol post messages.
24. The apparatus for communicating between a wireless device and an application program of an internet protocol server according to claim 19, further comprising:
means for routing said return data from said http stream to a short message service center using an smpp protocol message.
25. The apparatus for communicating between a wireless device and an application program of an internet protocol server according to claim 24, wherein:
said smpp protocol message is a SUBMIT_SM message.
26. The apparatus for communicating between a wireless device and an application program of an internet protocol server according to claim 25, further comprising:
means for conveying said return data from said short message service center to a wireless device using an IS-41 protocol message.

1. Field of the Invention

This invention relates generally to communications networks. More particularly, it relates to the communication between a mobile (i.e., wireless) device and an application server via a short message service center (SMSC) and the Internet.

2. Background of Related Art

Wireless communication services are in increasing demand in response to a society which is becoming increasingly mobile. Traditionally, wireless communication services include voice cellular phone and paging services in which a user can make a telephone call or send/receive a page including a numeric message indicating a telephone number over a wireless network. More recently, paging services have been expanded to offer alphanumeric paging, which allows a short text based message to be sent to and displayed at a handheld pager.

However, voice cellular telephone and the paging services each require an intended subscriber to be on-line or active to receive a telephone call or transmitted paging message. In other words, these services do not typically offer the capability of storing the messages for a temporarily unavailable subscriber.

In the early 1990s, as a result of the growing popularity of digital wireless technology, a standard for digital wireless networks was introduced in Europe. That standard, now known as the global standard for mobiles (GSM), included a service called short messaging service (SMS). An SMS allows transmission of short messages, typically up to 160 characters, to and from communication devices, e.g., cellular telephone handsets, telephones or computers with appropriate modems. In North America, the SMS is currently implemented on digital wireless/mobile networks, such as a PCS network based on the GSM standard, code division multiple access (CDMA) and/or time division multiple access (TDMA) methods. Short message services are gaining in popularity, particularly in the United States.

Short message services are advantageous over text based paging services because of the capability of bi-directional communication. Such bi-directional communication allows, for example, notification to the originating device of the success or failure of the short message delivery.

Each SMS network typically includes a short message service center (SMSC) which acts as a store-and-forward mechanism providing guaranteed delivery of short messages to a subscriber, even if the subscriber is inactive when the message was transmitted, by delivering the short messages once the subscriber becomes active. Delivery of all short messages is guaranteed regardless of whether or not the intended subscriber is “on-line” because the transmitted short message is stored within the SMS network and delivered to the intended subscriber from their assigned SMSC when the subscriber becomes available.

A variety of services have been introduced using SMS networks including, for example, integrated electronic mail and fax, integrated paging, interactive banking, and information services such as stock quotes and airline schedule delivery.

In operation, an SMSC receives a short message from any source intended to be delivered to a particular subscriber. When the intended subscriber is not available because, for example, it is turned off or is outside of the service area of the SMS network, the attempt to deliver the short message at that time will fail. In this case, the short message will be retained in the SMS network for a later delivery attempt. Thereafter, when the subscriber finally becomes available, e.g., is turned on or has moved into the service area of the SMS network, the relevant portions of the network (e.g., the mobile servicing center (MSC) and the home location register (HLR)) notify the SMSC to initiate delivery of the stored (i.e., previously failed) short messages.

FIG. 6 shows an exemplary structure of a SMS network 500. Although the following example is described using terms and protocols mainly as defined by the North American standard IS-41, it will be apparent to one skilled in the art that the example is applicable to any networks that offer store-and-forward type short message service.

The SMS network 500 typically includes one short message service center (SMSC) 501. The SMSC 501 typically includes a storage subsystem to store short messages that had failed to be delivered. The SMSC 501 typically further includes various interfaces (not shown) to receive short messages originating from various sources and protocols, such as a Voice Mail System (VMS) 508, paging networks using, e.g., Telocator Numeric Paging Protocol (TNPP) 509, devices using the Short Message Peer-to-Peer (SMPP) protocol 510 via Transmission Control Protocol/Internet Protocol(TCP/IP), e-mail systems using the Simple Mail Transport Protocol (SMTP) 511, and/or devices using the Telocator Alphanumeric Protocol (TAP) 512. Some of the various sources of the short messages may be gateways to other networks.

The SMSC 501 may further include a gateway/interworking block (not shown) that enables the SMSC 501 to communicate with the rest of the SMS network 500, such as a Home Location Register (HLR) 503 or a Mobile Switching Center (MSC) 505, using the Signaling System No. 7 (SS7) 502. The methods and mechanism of communication in the SMS network 500 are defined by the mobile application part (MAP) layer, which uses the services of the SS7 transaction capabilities application part (TCAP) as the signaling infrastructure of the SMS network 500. The protocol for the signaling is referred to as the IS-41 protocol under the American standard as published by the Telecommunication Industry Association (TIA) or as the GSM MAP under the European standard published by European Telecommunication Standards Institute (ETSI).

The Home Location Register (HLR) 503 includes a database that permanently stores and manages subscriptions and service profiles of users having a subscription to the SMS network 500. Although only one HLR 503 is shown, the SMS network 500 may include two or more HLRs. The SMS network 500 also typically includes several visitor location registers (VLR) 504. A VLR 504 is a database temporarily holding information about visiting subscribers who move into its service area. Thus, a VLR 504 contains information regarding routing information for all subscribers within its service area, and informs the relevant HLR 503 of the availability and routing information regarding its subscribers. The mobile switching center (MSC) 505 obtains subscriber information from the VLR 504 to service visiting subscribers.

The mobile switching center (MSC) 505 performs switching and call control functions, and receives short messages from the SMSC 501 for delivery to the appropriate mobile subscriber 507 (shown, e.g., as a cellular phone handset). It is to be understood that, although only one MSC 505 is shown, the wireless network 500 may include two or more MSCs.

The base station subsystem (BSS) 506 handles the wireless communications, e.g., RF transmission and reception of voice and data traffic, to and from the mobile subscriber 507. The BSS 506 is typically composed mainly of two parts: the base transceiver station (BTS, not shown) which houses the radio transceivers that define a cell and handles the radio-link protocols with the mobile subscriber 507, and the base station controller (BSC, also not shown) which manages the radio resources, and handles radio channel set up, frequency hopping, and handoffs (or handovers as is sometimes referred as). The BSC is the interface between the MSC 505 and the subscriber 507. The subscriber 507, also sometimes referred to as a mobile station (MS), typically consists of mobile equipment (e.g., a cellular phone handset) preferably uniquely identifiable by an identifying number, e.g., mobile identification number (MIN), International mobile subscriber identification (IMSI) and/or electronic serial number (ESN), for the subscriber 507. The mobile equipment may include a storage area, e.g., a flash memory, a read-only memory (ROM), a random access memory (RAM) or the like to hold the unique identifying number within the mobile equipment. In GSM networks, a smart card, typically referred to as a subscriber identity module (SIM) is utilized to store a unique identifying number.

FIG. 7 shows an exemplary flow of a short message through a conventional SMS network. Although FIG. 7 shows only an example of short message delivery to a mobile subscriber, it is to be understood that a mobile subscriber or any other sources may originate a short message. The flow of a mobile subscriber originated short message would involve similar processes as the following mobile subscriber terminated short message example, and would be apparent to one of ordinary skill in the art.

The SMSC 601 receives a short message intended for a subscriber 604 from a source of short message 605 which may be any one or more of the aforementioned sources of short messages, e.g., 508-512 of FIG. 6. Upon receiving a short message, the SMSC 601 sends a request for routing information, i.e., an SMS request (SMSREQ), to the HLR 602. The HLR 602 maintains information regarding the availability of the intended subscriber 604 and the appropriate MSC 603 that services the intended subscriber, and sends the information as routing information 608 back to the SMSC 601. The SMSC 601 forwards the short message to the appropriate MSC 603 using the routing information 608 received from the HLR 602, for example, in accordance with the short message delivery point-to-point (SMDPP) mechanism of IS-41 standard. The MSC 603 queries the VLR (not shown) for subscriber information. The VLR may perform a paging and authentication process, and sends the subscriber information to the MSC 603. The MSC 603, using the information received from the VLR, delivers the short message to the intended subscriber 604, and sends a delivery report 612 to the SMSC 601. The SMSC 601 may send the result of the delivery, i.e., the status report 613, to the source of the short message 605 if requested.

When the attempted delivery of the short message has failed because, for instance, the intended user was out of the service area, or had his or her communication device turned off, the MSC 603 informs the HLR 602 of the failure. The HLR 602 then turns on an SMS notification indicator flag for the subscriber, and the SMSC 601 retains the failed message for a later delivery attempt.

FIG. 8 shows a pending short message delivery process in a conventional short message service network after the mobile subscriber becomes available for delivery of the retained messages. In particular, in FIG. 8, when the subscriber 704 turns his or her handset on or comes within the service area, the subscriber's handset sends a registration signal 709 to the MSC 703. The registration signal 709 may or may not include authentication process.

Upon receiving the registration signal 709, the MSC 703 informs the HLR 702 (or the VLR 711) of the availability of the subscriber 704 by sending a subscriber available signal 708. Because the SMS notification flag for the subscriber is on, the HLR 702 or the VLR 703 sends an SMS notification (SMSNOT) message 705 in case of networks implementing IS-41 standard, or an equivalent notification alerting the fact that the subscriber has become available in networks implemented in accordance with other standards, to the SMSC 701 assigned to service that particular intended subscriber 704.

The SMSC 701 then sends a delivery request 706 to the MSC 703 via, for example, the SMDPP protocol in the IS-41 standard. The MSC 703 finally delivers the short message 710 to the subscriber 704, and sends a message delivered message 707 back to the SMSC 701 to confirm and finalize the delivery of the short message. The SMSC 701 may further send a delivery report to the source of the short message if it was requested.

The Wireless Application Protocol (WAP) attempts to standardize a mechanism for two-way communications. However, WAP requires that a special browser be loaded on the handset, and requires the user to enter into a dedicated ‘browser mode’ in order to interact with 2-way services.

There is a need for a standardized solution allowing short message communications between wireless devices and application servers on the Internet without the need for a specialized browser, while making use of existing communication standards utilized by standard SMSCs, e.g., SMPP.

In accordance with the principles of the present invention, a gateway comprises a first communication path to accept a short message from a short message service center. A translation module inserts the short message into an HyperText Transfer Protocol (HTTP) protocol message. A second communication path transmits the HTTP protocol message to at least one Uniform Resource Locator (URL).

A method of communicating between a wireless device and an application program on an Internet Protocol server in accordance with another aspect of the present invention comprises sending a short message from the wireless device to the Internet Protocol server. The short message is routed using a wireless protocol message. The short message is conveyed to the Internet Protocol server using an HTTP protocol Power On Self Test (POST) message.

A mobile to HTTP gateway application in accordance with yet another aspect of the present invention comprises an SMPP relayer, a message director to process messages from the SMPP relayer, a poster collector to obtain at least one target poster, and a poster.

Features and advantages of the present invention will become apparent to those skilled in the art from the following description with reference to the drawings, in which:

FIG. 1 illustrates an exemplary system adapted to push mobile originated (MO) messages to an IP (web) sever, in accordance with the principles of the present invention.

FIG. 2 depicts a mobile-to-HTTP gateway (MHG) as a ‘black box’ which is easily installed into existing systems to enable bi-directional communication between a mobile device and one or more IP servers within the parameters of standard protocol communications (e.g., SMPP and HTTP) between system elements, in accordance with the principles of the present invention.

FIG. 3 shows a message flow between the system elements shown in FIG. 1.

FIG. 4 shows software elements of an exemplary MO-HTTP Gateway (MHG) 100, in accordance with the principles of the present invention.

FIG. 5 shows various classes in an exemplary embodiment of a MHG 100, in accordance with the principles of the present invention.

FIG. 6 shows relevant portions of a conventional short message service network.

FIG. 7 shows a process of short message flow within a conventional short message service network.

FIG. 8 shows a pending message delivery process in a conventional short message service network.

The present invention provides a mobile-to-HTTP protocol gateway (MHG, or “MO Gateway”) which translates between standard wireless protocol commands (e.g., SMPP from an SMSC), and an application server on the Internet (i.e., a “Web Server”).

An MHG in accordance with the principles of the present invention allows any standard 2-way SMS capable handset to interact with specialized web applications. Using an MHG, it is no longer necessary for a user to launch a phone browser in order to access the services. Moreover, an MHG provides a simpler model than WAP for developing 2-way applications.

The disclosed embodiment of an MO-HTTP gateway uses the SMPP protocol. However, the principles of the present invention relate equally to other 2-way messaging protocols, e.g., ReFlex for 2-way pagers.

The MO-HTTP gateway provides a mechanism for developers to produce 2-way wireless applications using familiar Web-based tools and methodologies. The MO-HTTP gateway hides the details of communicating with the wireless network by interacting with applications using familiar HTTP posting. By adopting SMS and SMPP for its reference implementation, the MO-HTTP gateway avoids problems common to the WAP environment.

Utilizing an MHG in accordance with the principles of the present invention, a developer may create mobile applications using standard Web development tools, e.g., Java Servlets.

FIG. 1 illustrates an exemplary system adapted to push mobile originated (MO) messages to an IP (web) sever using standardized equipment and message protocols together with an MHG 100, in accordance with the principles of the present invention.

In particular, as shown in FIG. 1, a mobile (i.e., wireless) device 120 communicates with an appropriate wireless network 122 using any appropriate wireless standard protocol. In turn, the wireless network 122 communicates with a short message service center 124 using standard IS-41 communication protocol messages.

Appendix A attached hereto is a document entitled “SHORT MESSAGE PEER TO PEER (SMPP) INTERFACE SPECIFICATION” describing relevant features of mobile originated communications using Short Message Peer-to-Peer Protocol (referred to herein as SMPP).

The SMSC 124 communicates with a wireless internet gateway 126 via SMPP protocol commands in substantial conformance with the SMPP interface specification attached hereto in Appendix A.

A suitable wireless Internet gateway 126 is described in co-owned U.S. Appl. No. 60/199,367, filed on Apr. 25, 2000, entitled “Wireless Internet Gateway”, by Richard Smith, the entirety of which is expressly incorporated herein by reference.

The wireless Internet Gateway 126 communicates with a MHG 100 using Java Remote Method Invocation (RMI) technology to provide server-to-server capability.

The mobile to HTTP Gateway (MHG) 100 translates standard format RMI protocol commands from the wireless Internet gateway 126 into HTTP protocol commands, and directs the same to an appropriate Internet protocol (IP) server (i.e., web application server) 152, 154, and/or 156 in communication with the Internet 150.

FIG. 2 depicts the MHG 100 as a ‘black box’ which is easily installed into existing systems to enable bi-directional communication between a mobile device 120 and one or more IP servers 152-156 within the parameters of standard protocol communications (e.g., SMPP and HTTP) between system elements, in accordance with the principles of the present invention.

In particular, as shown in FIG. 2, the mobile to HTTP gateway (MHG) 100 preferably is bi-directional in that it generates HTTP protocol POST commands to an application program on a relevant IP server 152-156 based on mobile-originated messages, and translates responses to the same from HTTP protocol back into standard format SMPP messages for forwarding back to the relevant mobile device 120.

In accordance with the principles of the present invention, an HTTP protocol POST command is used by the MHG 100 to forward a request from the mobile device 120 to the relevant web IP server(s) 152-156. The HTTP protocol POST command is well known and documented in, e.g., RFC2068 and later Internet Engineering Taks Force (IETF) Request for Comments (RFC's) on the subject.

In particular, as is known within the HTTP protocol, an HTTP protocol POST command is used to request that a particular destination web IP server 152-156 accept the entity enclosed in the request (i.e., the mobile device 120) as a new subordinate of the resource identified by the Request-Uniform Resource Identifier (URI) in the Request-Line.

The HTTP protocol POST command is designed to allow a uniform method for various tasks, e.g., to allow annotation of existing resources, to allow posting of a message to a bulletin board, newsgroup, mailing list, or similar group of articles, to provide a block of data, such as the result of submitting a form, to a data-handling process, and/or to extend a database through an append operation. The actual function performed by the HTTP protocol POST method is determined by the particular web IP server 152-156, and is usually dependent on the Request-URI. The posted entity (i.e., the wireless device 120) is subordinate to that URI in the same way that a file is subordinate to a directory containing it, a news article is subordinate to a newsgroup to which it is posted, or a record is subordinate to a database.

The action performed by the HTTP protocol POST command might not result in a resource that can be identified by a URI. In this case, either 200 (OK) or 204 (No Content) is the appropriate response status, depending on whether or not the response includes an entity that describes the result. If a resource has been created on the origin server, the response should be 201 (Created) and contain an entity which describes the status of the request and refers to the new resource, and a location header.

Responses to the HTTP protocol POST are not cachable, unless the response includes appropriate Cache-Control or Expires header fields. However, the 303 (See Other) response can be used to direct the user agent to retrieve a cachable resource.

With respect to the MHG 100, the submitted HTTP protocol POST command includes mobile_num, resp_track_id and body fields. Also embedded within the HTTP protocol POST command is a Common Gateway Interface (CGI) name/value pair providing information about the particular request from the mobile device 120.

A response back to the mobile device 120 originates from the relevant web IP server 152-154 synchronously in response to the received HTTP protocol POST command.

Particular features of the standard SMPP utilized by various aspects of the present invention include the following:

FIG. 3 shows an exemplary message flow between the system elements shown in FIG. 1.

In particular, the following steps 1 to 12 are depicted between system elements in FIG. 3 as an example of message routing between a mobile device 120 and a relevant web IP server 152-154.

Step 1

The mobile device 120 sends a short message to a pre-defined address (e.g., ‘info’, or 4636). If the body of the short message is empty, or if the body contains a special string such as ‘menu’, then ultimately a menu would be sent by the HTTP Application on the relevant web IP server 152-156 to the mobile device 120.

Other bodies may be used to, e.g., identify global commands, or provide context-sensitive information from the mobile device 120 to the HTTP application on the web IP server 152-156. Requirements for body content depend on the particular HTTP application as it exists on the particular web IP server 152-156.

Step 2

The SMSC 124 routes the short message to an ESME (e.g., the wireless Internet gateway 126) for delivery using a standard SMPP protocol DELIVER_SM message. As disclosed, the MHG 100 utilizes the following fields of the DELIVER_SM command: service_type, source_addr, destination_addr, registered_delivery_flag, esm_class, and short_message.

In particular, the MHG 100 utilizes the service_type parameter to indicate the SMS application service associated with the message. For instance, the service_type field may be populated with the value ‘page’.

The source_addr is the address of the SME (e.g., mobile device 120) that originated the short message. As disclosed, the source_addr is the Mobile Identification Number (MIN) of the mobile device 120 making the request.

The destination_addr is the address of the destination SME. As disclosed, the destination_addr may be assumed to be ‘4636’ as indicated in Step 1 above. This address is used to route the request to the appropriate HTTP URL.

The registered_delivery_flag indicates if an SME Acknowledgement is necessary. As disclosed, the registered_delivery_flag is set to a default value of 0, which indicates that no delivery receipt is requested.

The esm_class indicates the message type and Enhanced network services.

The short_message field contains up to 254 octets of short message user data.

Thus, key fields of the DELIVER_SM command may be populated by the MHG 100 as follows:

service_type: page
source_addr: mobile's MIN
destination_addr: 4636
registered_delivery_flag: 0
esm_class 0
short_message: $R[new ref id]$M[message]

The $R in the short_message is optional, and is applicable for use with SMPP v3.3. The $R may be used when correlating responses from the mobile device 120 to Reply-request messages from the application program on the relevant web IP server 152-156. For consistency, the $R is preferably always present in short messages from the mobile device 120.

Step 3

When the wireless Internet gateway 126 receives the SMPP message from the SMSC 124, it creates a DELIVER_SM object. The DELIVER_SM object is forwarded by the wireless Internet gateway 126 to any relevant remote applications that are registered to receive messages on a specified ports/link ID, e.g., the MHG 100 if the MHG 100 is registered with the wireless Internet gateway 126 to receive SMPP messages. The transmission is accomplished through an RMI callback mechanism.

Step 4

The MO-HTTP Gateway (MHG) 100 receives the DELIVER_SM message object from the wireless Internet gateway 126, and formulates an HTTP protocol POST command message to a web server on the Internet 150 to convey the message content. The MHG 100 can direct the HTTP protocol POST command messages to one or to multiple URLs.

The particular web server to reference is determined by the included destination address, assuming that the SMPP destination address field contains the targeted number, e.g., ‘4636’. The HTTP protocol POST command message may be routed based on the SMPP port utilized.

As disclosed, exemplary name/values that may be utilized in the HTTP protocol POST command message sent to the web server are the mobile_num, resp_track_id, and body.

The mobile_num may be the mobile identification number (min) identifying the originating mobile number of the relevant mobile device 120.

The resp_track_id may be the reference ID (ref id) for user acknowledgements used to track questions and related answers.

The body may be the payload content from the mobile device 120 included in the message body field.

As embodied, by default, only SMPP messages with esm_class values of ‘0’ and ‘16’ are forwarded by the wireless Internet gateway 126 to the web IP server 152-156. That is, only new mobile originated requests and/or menu responses are forwarded.

If, for instance, the SMPP message type is ‘16’, then the resp_track_id variable may contain the reference ID. On the other hand, if the message type is ‘0’, then the reference ID is not passed to the relevant web IP server(s) 152-156.

Utilization of the SMPP message type and inclusion/non-inclusion of the reference ID reduces network traffic and resource requirements, and simplifies development on the web side.

Step 5

The relevant web server in the Internet 150 receives the HTTP protocol POST command information, which may be handled by the actual CGI/Servlet routine specified by the URL in Step 4.

The handling servlet may create sessions for each mobile device such that the current state of the mobile device may be preserved, allowing meaningful content to be transmitted. Example wireless web applications may include menu-based services, games, and information services.

After the servlet of the web server in the Internet 150 receives the HTTP protocol POST command, the servlet synchronously returns data through the HTTP stream back to the MHG 100. The text returned by the servlet may be delivered to the mobile device 120 as a standard SMS message.

The returned data may be contained within an <SMS> and </SMS> tag-set. The <SMS> and </SMS> tags are special tags used by the MHG 100 to denote SMSC Type data. As the number and/or variety of applications increase, additional tags may be implemented.

As disclosed, there are several fields embedded within the <SMS> and <ISMS> tags: mobile_num, resp_track_id, and body.

The mobile_num field includes a mobile identification number of the mobile device 120 that a relevant short message is destined for.

The resp_track_id field includes a unique identification number generated by the servlet. The MHG 100 returns this id to the servlet for responses.

The body field includes the text to send to the desired mobile device 120. If the body field is blank, then nothing will be sent to the mobile device 120.

If the servlet requires a single-button user response (e.g., for a menu), then the “<RESP_TRACK_ID value=‘x’>” tag can be included prior to the </SMS> tag. This tells the system that a menu is required and that the specified unique tracking number should be used.

When the user of the mobile device 120 responds to this message, this same tracking id may be returned in the resp_track_id cgi variable.

For ease of description of some of the following steps, an example using the scenario described above is introduced wherein the servlet returns the following:

After having posted its data to the web server in the Internet 150, the MHG 100 receives a response from the same connection, as described in Step 5. A standard SUBMIT_SM MT message is generated from the text received within the <SMS> tag set.

In particular, the SUBMIT_SM message is issued by the ESME (e.g., the wireless Internet gateway 126) to submit a short message to the SMSC 124 for transmission to a specified mobile device 120. In creating a SUBMIT_SM message destined for the SMSC 124, the conventional SMPP Protocol specification is followed, with the exception of the following mapping implemented between the SUBMIT_SM message and data received in the <SMS> and </SMS>.

A registered_delivery_flag in the SUBMIT_SM message informs the SMS that the ESME (wireless Internet gateway) 126 requires a notification when the message has been delivered. If the RESP_TRACK_ID is provided (i.e., contains a value), then the registered_delivery_flag field is set to ‘8’ for the MHG 100 indicating ‘SME Manual/User Ack requested’, and a special tag of R$[track id] is included in the message body. Preferably, this same tracking id will be returned in the response message from the mobile device 120.

A short_message in the SUBMIT_SM message is the payload containing up to 160 bytes of data that should be transmitted to the mobile device 120. An empty body indicates that no message is to be sent to the mobile. If the RESP_TRACK_ID value is set, then a special tag of “$R” concatenated with the value from the RESP_TRACK_ID and the tag “$M” must be prepended to the short message.

The other fields of the SUBMIT_SM message are used as conventionally known and described in the SMPP Protocol.

Step 7

The SMSC 124 receives the SUBMIT_SM message and delivers a short message, with manual ack request, to the mobile device 120.

Step 8

The mobile device 120 responds to the “Do you like cookies?” question, e.g., by pressing ‘9’ for Yes.

Step 9

The SMSC 124 receives the response from the mobile device 120 and formulates a DELIVER_SM message. The formulated DELIVER_SM message is forwarded to the wireless Internet gateway 126.

Key parameters in the DELIVER_SM message may be populated as follows:

service_type: page
source_addr: [mobile's MIN]
destination_addr: 4636
registered_delivery_flag: 0
esm_class: 16
short_message: R1234$[Response Value]

The response code is shown directly after the $M value.

Step 10

The wireless Internet gateway 126 receives the DELIVER_SM message from the SMSC 124, converts the DELIVER_SM message into an object, and forwards the DELIVER_SM message to any listeners (e.g., the MHG 100). In the disclosed example, the MHG 100 may be listening to the wireless Internet gateway 126 on a specified port, and therefore receive the DELIVER_SM message from the specified port.

Step 11

The MHG 100 receives the DELIVER_SM object, and determines if the esm_class is ‘16’. If so, the short message is translated by the MHG 100 and forwarded to its web listeners.

A URL is associated with either the SMPP link ports or the destination address through a configuration file of the MHG 100. The MHG 100 therefore formulates an HTTP protocol POST command message to the appropriate URL(s).

As disclosed, the HTTP protocol POST command message may contain the following name/value pairs:

To ease the burden of the web developer, the MHG 100 may include the response code only for messages where esm_class=‘16’. Thus, if the esm_class is not ‘16’, the response code need not be included. Regardless of how the MSG 100 receives it, it need pass only the response code in the body field.

Step 12

The servlet associated with the specified URL receives the HTTP protocol POST command message from the MHG 100.

The servlet may retrieve a session object for the particular value of the mobile_num, and determines that it had just asked the mobile device 120 about a cookie preference.

The servlet may confirm that the query's tracking ID correlates to the resp_track_id value. Thus, the servlet knows that the response at hand is in response to that question. Since the body contains the content ‘9’ (or ‘Y’ or other suitable response), the servlet may rightfully conclude that the user of the mobile device 120 (who input the ‘9’ response) likes cookies.

A conversation or communication between the mobile device 120 and an application on one or more particular web IP servers 152-156 may continue on as described in steps 1 to 12 indefinitely.

FIG. 4 shows software elements of an exemplary MO-HTTP Gateway (MHG) 100, in accordance with the principles of the present invention.

In particular, as shown in FIG. 4, the software elements of the MHG 100 include an SMPPRelayer 402, a MessageDirector 404, a PosterCollection 406, a Poster 408, and a Servlet 410.

In accordance with the principles of the present invention, one or more SMPPRelayers 402 will register as listeners to specified link IDs of the wireless Internet gateway 126.

In message 421 shown in FIG. 4, SMPP messages are sent by the wireless Internet gateway 126 to the SMPPRelayer 402 of the MHG 100 as they are received.

In message 422, the SMPPRelayer 402 forwards each message to a MessageDirector 404.

In message 423, the MessageDirector 404 retrieves a Poster 408 from the PosterCollection 406, and then in message 424 tells the Poster 408 to process the SMPP Message.

In message 425, the Poster 408 converts the SMPP Message into an HTTP protocol POST command request 425 to a specific universal resource locator (URL), and receives return results back in message 426.

In message 427, the Poster 408 returns the results back to the SMPPRelayer 402, so that it will be sent to the mobile device 120, as depicted in message 428.

FIG. 5 shows various classes in an exemplary embodiment of a MHG 100, in accordance with the principles of the present invention.

In particular, as shown in FIG. 5, the MHG 100 includes a MOHGateway class 502, an SMPPRelayer class 402, a MessageDirector class 404, a PosterCollection class 406, and a Poster class 408.

The MOHGateway class 502 defines “maino”, and upon execution will create the SMPPRelayer class 402, the MessageDirector class 404, and the PosterCollection class 406, assigning references to one another as appropriate.

The PosterCollection class 406 accesses a standard application resource class to determine the number of Posters 408 required, as well as the desired configuration of each Poster 408. The PosterCollection class 406 creates the Posters 408 and provides references to the Posters 408 through a getPoster(SMPPMessage msg) method.

The SMPPRelayer class 402, the MessageDirector class 404, the PosterCollection class 406, and the Poster 408 each receive an ILogger object for recording information.

While the invention has been described with reference to the exemplary embodiments thereof, those skilled in the art will be able to make various modifications to the described embodiments of the invention without departing from the true spirit and scope of the invention.

Smith, Richard A., Wilson, Johanna

Patent Priority Assignee Title
10110550, Jul 23 2007 Twitter, Inc. Device independent message distribution platform
10257671, Aug 27 2007 KYNDRYL, INC System and method of creating and providing SMS HTTP tagging
10275582, Dec 14 2011 Visa International Service Association Online account access control by mobile device
10496990, Feb 22 2012 Visa International Service Association Data security system using mobile communications device
10614199, Dec 14 2011 Visa International Service Association Online account access control by mobile device
10643191, Jan 27 2012 Visa International Service Association Mobile services remote deposit capture
10686748, Jul 23 2007 Twitter, Inc. Device independent message distribution platform
11443314, Feb 22 2012 Visa International Service Association Data security system using mobile communications device
11502985, Jul 23 2007 Twitter, Inc. Device independent message distribution platform
7221952, Aug 26 2002 SK TELECOM CO , LTD Method for processing address of short message service center in IMT-2000 asynchronous network
7243152, Oct 20 2000 AZZURRO INVESTMENT AG Method for transmitting short messages over the internet
7366505, Sep 30 2003 SAP SE Apparatus and method for delivering messages to a mobile information terminal
7369533, Feb 02 2004 UTStarcom, Inc. System, method and mobile devices transmitting request codes during link establishment in data networks
7440441, Jun 16 2003 Redknee Inc. Method and system for Multimedia Messaging Service (MMS) rating and billing
7450562, Sep 05 2001 Samsung Electronics Co., Ltd. Method for transmitting short message using internet phones and system therefor
7457865, Jan 23 2003 REDKNEE INC Method for implementing an internet protocol (IP) charging and rating middleware platform and gateway system
7583680, Nov 26 1999 Nokia Corporation Method and arrangement for transmitting information between subsystems in hybrid cellular telecommunication systems
7644158, Jan 23 2003 Redknee Inc. Method for implementing an internet protocol (IP) charging and rating middleware platform and gateway system
7774231, Sep 29 2000 RPX Corporation Electronic payment methods for a mobile device
7873347, Jun 19 2003 Redknee Inc.; REDKNEE INC Method for implementing a Wireless Local Area Network (WLAN) gateway system
7873734, May 17 2001 GOOGLE LLC Management of multiple user sessions and user requests for multiple electronic devices
7890146, Nov 12 2004 KT Corporation Method and system for providing selected service by displaying numbers and strings corresponding to inputted buttons
7941197, Sep 12 2007 DEVICEFIDELITY, INC A TEXAS CORPORATION Updating mobile devices with additional elements
8005495, Nov 08 2000 International Business Machines Corporation Electronic short messaging and advertising method and device
8027334, Jun 16 2003 Redknee, Inc. Method and system for multimedia messaging service (MMS) rating and billing
8060109, Aug 04 1997 Enovsys LLC Authorized location reporting mobile communication system
8070057, Sep 12 2007 DeviceFidelity, Inc.; DEVICEFIDELITY, INC Switching between internal and external antennas
8082292, Apr 18 2005 HUAWEI TECHNOLOGIES CO , LTD Method and system for centralized user notification and application execution control
8109444, Sep 12 2007 DeviceFidelity, Inc.; DEVICEFIDELITY, INC A TEXAS CORPORATION Selectively switching antennas of transaction cards
8145773, Feb 12 2009 Sprint Communications Company L.P. Multiple cookie handling
8176129, Aug 27 2007 SNAP INC System and method of sending compressed html messages over telephony protocol
8190221, Sep 12 2007 DEVICEFIDELITY, INC A TEXAS CORPORATION Wirelessly accessing broadband services using intelligent covers
8195188, Aug 04 1997 SPRINT SPECTRUM, L P Location reporting satellite paging system with optional blocking of location reporting
8244859, Jan 23 2003 Redknee, Inc. Method for implementing an internet protocol (IP) charging and rating middleware platform and gateway system
8248965, Nov 03 2005 MOTOROLA SOLUTIONS, INC Method and apparatus regarding use of a service convergence fabric
8271004, Aug 08 2006 JYGY, INC User generated dynamic mobile service
8276809, Feb 14 2005 GEMALTO SA Smart phones with web based interfaces
8331902, Jun 19 2003 Redknee Inc. Method for implementing a wireless local area network (WLAN) gateway system
8341083, Sep 12 2007 DeviceFidelity, Inc.; DEVICEFIDELITY, INC A TEXAS CORPORATION Wirelessly executing financial transactions
8380259, Sep 12 2007 DeviceFidelity, Inc. Wirelessly accessing broadband services using intelligent covers
8380569, Apr 16 2009 Visa International Service Association, Inc. Method and system for advanced warning alerts using advanced identification system for identifying fraud detection and reporting
8381999, Sep 12 2007 DeviceFidelity, Inc. Selectively switching antennas of transaction cards
8396075, Dec 02 2002 Redknee Inc. Method for implementing an open charging (OC) middleware platform and gateway system
8397310, Oct 11 2005 Smart container system for charging, storing, and using electronic devices
8401009, Jul 23 2007 Twitter, Inc. Device independent message distribution platform
8430325, Sep 12 2007 DeviceFidelity, Inc. Executing transactions secured user credentials
8542676, Jun 16 2003 Redknee Inc. Method and system for multimedia messaging service (MMS) rating and billing
8548540, Sep 12 2007 DeviceFidelity, Inc. Executing transactions using mobile-device covers
8559942, Aug 04 1997 Enovsys LLC Updating a mobile device's location
8559985, Nov 08 2000 International Business Machines Corporation Electronic short messaging and advertising method and device
8577379, Sep 25 2003 Qualcomm Incorporated Method of handling automatic call origination and system determination on multi-network mobile devices
8600414, Nov 08 2000 International Business Machines Corporation Electronic short messaging and advertising method and means
8645222, Mar 20 2009 JPMORGAN CHASE BANK, N.A. System and methods for mobile ordering and payment
8706078, Aug 04 1997 MERGENET SOLUTIONS, INC Location reporting satellite paging system with privacy feature
8712450, Aug 27 2007 KYNDRYL, INC System and method of creating and providing SMS http tagging
8775621, Aug 31 2006 Redknee Inc. Policy services
8776189, Sep 12 2007 DeviceFidelity, Inc.; DEVICEFIDELITY, INC A TEXAS CORPORATION Wirelessly accessing broadband services using intelligent cards
8825093, Nov 07 2001 International Business Machines Corporation Electronic short messaging and advertising method and device
8898690, Oct 30 2007 COCKSTER MUSIC, INC Apparatus and method for managing media content
8903735, Apr 16 2009 Visa International Service Association System and method for pushing advanced warning alerts
8915447, Sep 12 2007 DeviceFidelity, Inc.; DEVICEFIDELITY, INC Amplifying radio frequency signals
8925827, Sep 12 2007 DEVICEFIDELITY, INC Amplifying radio frequency signals
8965419, Feb 15 2001 Vodafone Group PLC System for interconnecting a remote server with a short message server centre (SMSC) via the internet
9008620, Jul 19 2006 SAMSUNG ELECTRONICS CO , LTD Mobile device service authorization system and method
9016589, Sep 12 2007 DeviceFidelity, Inc. Selectively switching antennas of transaction cards
9059871, Dec 27 2007 Redknee Inc. Policy-based communication system and method
9060045, Oct 30 2007 COCKSTER MUSIC, INC Apparatus and method for managing media content
9088532, Jul 23 2007 Twitter, Inc. Device independent message distribution platform
9106647, Sep 12 2007 DeviceFidelity, Inc. Executing transactions secured user credentials
9152911, Sep 12 2007 DeviceFidelity, Inc. Switching between internal and external antennas
9167420, May 24 2002 U S BANK TRUST COMPANY, NATIONAL ASSOCIATION Mobile terminal system
9195931, Sep 12 2007 DeviceFidelity, Inc. Switching between internal and external antennas
9225718, Sep 12 2007 DeviceFidelity, Inc. Wirelessly accessing broadband services using intelligent cards
9230259, Mar 20 2009 JPMORGAN CHASE BANK, N.A. Systems and methods for mobile ordering and payment
9250084, Aug 10 2007 Cisco Technology, Inc.; Cisco Technology, Inc System and method for navigating using multiple modalities
9253612, Aug 27 2007 KYNDRYL, INC System and method of creating and providing SMS http tagging
9277184, Oct 30 2007 COCKSTER MUSIC, INC Apparatus and method for managing media content
9277377, Nov 08 2000 Open Invention Network, LLC Electronic short messaging and advertising method and device
9304555, Sep 12 2007 DEVICEFIDELITY, INC Magnetically coupling radio frequency antennas
9311766, Sep 12 2007 DEVICEFIDELITY, INC A TEXAS CORPORATION Wireless communicating radio frequency signals
9317672, Dec 14 2011 Visa International Service Association Online account access control by mobile device
9384480, Sep 12 2007 DEVICEFIDELITY, INC A TEXAS CORPORATION Wirelessly executing financial transactions
9418362, Sep 12 2007 DEVICEFIDELITY, INC Amplifying radio frequency signals
9454783, Jul 21 2006 SAMSUNG ELECTRONICS CO , LTD Method and apparatus for conducting e-commerce on a mobile handset
9549073, Oct 07 2011 INTEROP TECHNOLOGIES, LLC Non-IMS rich communication suite
9577966, Jul 23 2007 Twitter, Inc. Device independent message distribution platform
9686661, Aug 27 2007 KYNDRYL, INC System and method of creating and providing SMS HTTP tagging
9886706, Mar 20 2009 JPMORGAN CHASE BANK, N.A. Systems and methods for mobile ordering and payment
9986393, Aug 27 2007 KYNDRYL, INC System and method of creating and providing SMS HTTP tagging
Patent Priority Assignee Title
1103073,
4494119, Aug 04 1983 SECURITY RESPONSE L L C Distress radiolocation method and system
4651156, Feb 08 1982 COOPER INDUSTRIES, INC , 1001 FANNIN, SUITE 4000, HOUSTON, TEXAS 77002, A CORP OF OH Integrated radio location and communication system
4706275, Nov 13 1985 AEROTEL LTD , 8 BEZALEL STREET, RAMAT GAN 52521, ISRAEL, A CORP OF ISRAEL Telephone system
4891638, Oct 30 1987 Motorola, Inc. Nationwide display pager with location readout
4891650, May 16 1988 COMCAST TM, INC Vehicle location system
4952928, Aug 29 1988 B I INCORPORATED Adaptable electronic monitoring and identification system
5014206, Aug 22 1988 GVTS, INC A K A GLOBAL VEHICLE TRACKING SYSTEMS, INC Tracking system
5043736, Jul 27 1990 INTRINSYC SOFTWARE INTERNATIONAL, INC Cellular position locating system
5055851, May 16 1988 COMCAST TM, INC Vehicle location system
5068656, Dec 21 1990 MIX TELEMATICS NORTH AMERICA, INC System and method for monitoring and reporting out-of-route mileage for long haul trucks
5068891, May 31 1989 MARSHALL PATENT HOLDINGS, LLC Credit control system for long distance telephone services
5070329, Dec 04 1989 Motorola, Inc. On-site communication system with RF shielding having pager identification capability
5081667, May 01 1989 DEI HEADQUATERS, INC; DEI HEADQUARTERS, INC System for integrating a cellular telephone with a vehicle security system
5119104, May 04 1990 FRESHLOC TECHNOLOGIES, INC Location system adapted for use in multipath environments
5144283, Jun 18 1990 Kenneth P., Arens Energy efficient alarm system and regulative central control unit
5161180, Oct 19 1990 Call interceptor for emergency systems
5177478, Jun 24 1988 Kabushiki Kaisha Toshiba Paging system having an effective ID-code transferring function
5193215, Jan 25 1990 Location signalling device for automatically placing a radio distress call
5208756, Jan 28 1991 Vehicle locating and navigating system
5214789, Nov 17 1989 Uniden America Corporation Radio channel allocation based on location of mobile users
5218367, Jun 01 1992 COMCAST TM, INC Vehicle tracking system
5223844, Apr 17 1992 PJC LOGISTICS LLC Vehicle tracking and security system
5235630, Apr 17 1991 AMCOM SOFTWARE, INC Emergency call station identification system and method
5239570, Jul 25 1990 Teltone Corporation 9-1-1 Switched access system
5266944, Jun 26 1991 B I INCORPORATED Electronic system and method for monitoring abusers for compliance with a protective order
5289527, Sep 20 1991 Qualcomm Incorporated Mobile communications device registration method
5293642, Dec 19 1990 Apple Inc Method of locating a mobile station
5299132, Jan 17 1991 IRON OAKS TECHNOLOGIES, LLC Vehicle locating and communicating method and apparatus using cellular telephone network
5325302, Oct 15 1990 ELBIT SYSTEMS LTD GPS-based anti-collision warning system
5334974, Feb 06 1992 SIMMS SECURITY CORPORATION Personal security system
5343493, Mar 16 1993 Hughes Electronics Corporation Personal assistance system and method for use with a cellular communication system
5347568, Apr 17 1991 AMCOM SOFTWARE, INC Emergency call station identification system
5351235, Feb 12 1991 Nokia Corporation Method for relaying information in an integrated services network
5361212, Nov 02 1992 Honeywell Inc. Differential GPS landing assistance system
5363425, Jun 29 1992 RPX CLEARINGHOUSE LLC Method and apparatus for providing a personal locator, access control and asset tracking service using an in-building telephone network
5374936, Feb 28 1994 SHERMAN, WILFRED M Security system
5379451, Nov 08 1991 Hitachi, Ltd.; Kokusai Electric Co., Ltd. Mobile communication system and location registration method in mobile communication system
5381338, Jun 21 1991 HOOPER, DAVID C Real time three dimensional geo-referenced digital orthophotograph-based positioning, navigation, collision avoidance and decision support system
5387993, Jun 25 1993 FRESHLOC TECHNOLOGIES, INC Method for receiving and transmitting optical data and control information to and from remotely located receivers and transmitters in an optical locator system
5388147, Aug 30 1993 AT&T Corp. Cellular telecommunication switching system for providing public emergency call location information
5390339, Oct 23 1991 Motorola Mobility, Inc Method and apparatus for selecting a serving transceiver
5394158, Jul 25 1990 British Telecommunications public limited company Location determination and handover in mobile radio systems
5396227, Jun 26 1991 B I INCORPORATED Electronic system and method for monitoring compliance with a protective order
5398190, Jan 17 1991 IRON OAKS TECHNOLOGIES, LLC Vehicle locating and communicating method and apparatus
5406614, Feb 21 1992 NEC Electronics Corporation Zone registration of a mobile in a mobile telephone system
5418537, Nov 18 1992 Trimble Navigation, Ltd. Location of missing vehicles
5423076, Sep 24 1993 WESTINGHOUSE AIR BRAKE COMPANY, A CORP OF DELAWARE Superheterodyne tranceiver with bilateral first mixer and dual phase locked loop frequency control
5432841, Jul 10 1992 System for locating and communicating with mobile vehicles
5434789, Oct 06 1993 GPS golf diagnostic system
5454024, Aug 31 1989 GELLMAN, TOBI KAY, TRUSTEE OF LEBOWITZ MAYER MICHAEL Cellular digital packet data (CDPD) network transmission system incorporating cellular link integrity monitoring
5461390, May 27 1994 AT&T IPM Corp Locator device useful for house arrest and stalker detection
5470233, Mar 17 1994 FREEDOM SCIENTIFIC BLV GROUP, LLC System and method for tracking a pedestrian
5479408, Feb 22 1994 Wireless personal paging, communications, and locating system
5479482, Aug 30 1993 AT&T IPM Corp Cellular terminal for providing public emergency call location information
5485161, Nov 21 1994 Trimble Navigation Limited Vehicle speed control based on GPS/MAP matching of posted speeds
5485163, Mar 30 1994 Google Technology Holdings LLC Personal locator system
5488563, Apr 07 1992 Dassault Electronique Method and device for preventing collisions with the ground for an aircraft
5497149, Sep 02 1993 Global security system
5508931, May 15 1992 TOMTOM GLOBAL ASSETS BV Route guidance on/off-route state filter
5513243, Jan 20 1992 NEC Corporation Person location system
5515287, Mar 08 1994 Tokimec Inc. Navigation display apparatus for collison avoidance utilizing polygonal safety regions and predicted danger areas
5519403, Nov 29 1993 General Dynamics Decision Systems, Inc Global positioning system communications multi-interface
5532690, Apr 04 1995 Exelis Inc Apparatus and method for monitoring and bounding the path of a ground vehicle
5535434, Jan 24 1994 Motorola, Inc. Carry case having paging circuitry section
5539398, Jan 07 1994 GARRISON LOAN AGENCY SERVICES LLC GPS-based traffic control preemption system
5543776, Oct 19 1993 WHISTLER GROUP INC , THE Vehicle security system
5552772, Dec 20 1993 Trimble Navigation Limited Location of emergency service workers
5555286, Jan 31 1994 TENDLER CELLULAR, INC Cellular phone based automatic emergency vessel/vehicle location system
5568119, Dec 21 1993 Trimble Navigation Limited Arrestee monitoring with variable site boundaries
5574648, Oct 09 1990 HONEYWELL INTELLECTUAL PROPERTIES, INC NOW BRH LLC Airport control/management system using GNSS-based methods and equipment for the control of surface and airborne traffic
5579372, Dec 12 1994 Telefonaktiebolaget LM Ericsson Flow control method for short message service - busy subscriber
5588009, Feb 03 1994 Personal paging, communications, and locating system
5592535, Apr 16 1993 Alcatel Sel Aktiengesellschaft Mobile-radio network with debit accounts
5604486, May 27 1993 HID Corporation RF tagging system with multiple decoding modalities
5606313, Dec 10 1993 MOTOROLA SOLUTIONS, INC Low power addressable data communication device and method
5606850, Oct 09 1992 Sakura Rubber Co., Ltd. Outdoor working automating system
5610815, Dec 11 1989 Caterpillar Inc. Integrated vehicle positioning and navigation system, apparatus and method
5614890, Dec 27 1993 MOTOROLA SOLUTIONS, INC Personal identification system
5615116, Feb 05 1990 Caterpillar Inc. Apparatus and method for autonomous vehicle navigation using path data
5621793, May 05 1995 PHILIP A RUBIN AND ASSOCIATES, INC TV set top box using GPS
5628051, Jan 15 1993 Nokia Telecommunications Oy Method for starting a message transmission in a mobile telephone network
5633912, Jul 08 1993 Qwest Communications International Inc Mobile telephone user interface including fixed and dynamic function keys and method of using same
5673306, May 22 1990 Cellular Technical Services Company, Inc. Cellular rental phone system and method having realtime data collection and billing
5682600, Sep 18 1992 IROQUOIS MASTER FUND, L P Method for starting a short message transmission
5692037, Mar 31 1995 FRIEND FOUNDATION, THE On demand real time telephone billing equipment
5740534, Feb 22 1996 Google Technology Holdings LLC Method for determining available frequencies in selective call receivers
5761618, Dec 22 1994 Verizon Patent and Licensing Inc Updating technique for downloading new system identification (SID) list into a handset
5767795, Jul 03 1996 INVENSENSE, INC GPS-based information system for vehicles
5768509, Apr 08 1996 Intellectual Ventures I LLC Short message server without local customer database
5774533, Aug 14 1996 BELLSOUTH INTELLECTUAL PROPERTY GROUP, INC ; Bellsouth Intellectual Property Corporation Method and system for providing a billing directed communication service
5787357, Oct 17 1991 2011 INTELLECTUAL PROPERTY ASSET TRUST Short message processing in a mobile exchange
5794142, Jan 29 1996 Nokia Technologies Oy Mobile terminal having network services activation through the use of point-to-point short message service
5797091, Mar 07 1995 TELECOMMUNICATION SYSTEMS, INC Personal communication system and method of use
5797094, May 23 1995 Telefonaktiebolaget L M Ericsson (publ) Method and apparatus for supporting the delivery of short message service messages to sleeping mobile stations in a cellular communications system
5797096, Aug 02 1995 Telefonaktiebolaget LM Ericsson (publ) System and method for maintaining control channel mode information in a cellular telecommunications network
5802492, Jun 24 1994 Garmin Switzerland GmbH Computer aided routing and positioning system
5806000, Oct 12 1995 Telefonaktiebolaget LM Ericsson (publ) System and method for implementing short message service extension phones within a radio telecommunications network
5822700, Apr 18 1996 Unwired Planet, LLC Flow control of short message service messages in a cellular telephone network
5828740, Nov 14 1996 Sprint Communications Co., L.P.; SPRINT COMMUNICATIONS COMPANY, L P Prepaid calling card external/adjunct database processor
5905736, Apr 22 1996 AT&T Corp Method for the billing of transactions over the internet
5920821, Dec 04 1995 Verizon Patent and Licensing Inc Use of cellular digital packet data (CDPD) communications to convey system identification list data to roaming cellular subscriber stations
5930701, Oct 17 1996 Telefonaktiebolaget L M Ericsson (publ) Providing caller ID within a mobile telecommunications network
5943399, Sep 29 1995 RPX CLEARINGHOUSE LLC Methods and apparatus for providing communications to telecommunications terminals
5946629, Nov 28 1995 IDTP HOLDINGS, INC Cellular telephone network having short message service interaction with other networks
5946630, Jul 10 1996 TELEFONAKTIEBOLAGET L M ERICSSON PUBL Method for storing and forwarding short messages to mobile subscribers in a cellular communications system
5950130, Mar 18 1997 SBC Technology Resources, INC Mobile station with intelligent roaming and over-the-air programming features
5953398, Jun 10 1994 eBay Inc Prepaid long-distance telephone service system with flexible operating parameters
5974054, Apr 23 1997 Google Technology Holdings LLC Method and apparatus in a radio messaging system for forming a current frame of data while maintaining a correct transmission order for numbered messages
5978685, Dec 15 1997 TELEFONAKTIEBOLAGET L M ERICSSON PUBL Digital cellular telecommunications with short message service over the packet channel
5987323, Jul 20 1994 Comcast Cable Communications, LLC Starting a short message transmission in a cellular communication system
5999811, Feb 16 1996 Ericsson Inc Mobile telephone for roaming using dual mode/band equipment including SIM cards
6035025, Jan 07 1998 FREEDOM WIRELESS INC System and method for a prepaid bundled telecommunications account
6049710, Jun 19 1997 DOT 23 TECHNOLOGIES, LLC Wireless prepaid telephone system with dispensable instruments
6058300, Feb 04 1997 FREEDOM WIRELESS INC Prepay telecommunications system
6064875, Jan 31 1997 AT&T MOBILITY II LLC Wireless communications system and method of operation for reducing fraud
6070067, Oct 31 1997 CLUSTER, LLC; Optis Wireless Technology, LLC Prepayment method utilizing credit information stored in mobile terminals for accessing wireless telecommunication networks
6075982, Sep 23 1997 Verizon Patent and Licensing Inc Wireless prepaid platform integration with standard signaling
6081508, Feb 25 1998 Extreme Networks, Inc Remote computer communication
6101378, Aug 15 1996 JAPAN RADIO CO , LTD Pre-paid cellular telephone system
6122503, Oct 08 1996 AT&T MOBILITY II LLC Method and apparatus for over-the-air programming of telecommunication services
6122520, Feb 13 1998 Apple Inc System and method for obtaining and using location specific information
6138158, Apr 30 1998 UNWIRED PLANET IP MANAGER, LLC; Unwired Planet, LLC Method and system for pushing and pulling data using wideband and narrowband transport systems
6148197, Mar 06 1998 AT&T Intellectual Property I, L P Intelligent roaming system with over the air programming
6148198, Aug 05 1998 Unwired Planet, LLC Method and apparatus for selecting a service provider
6149353, Jun 19 1997 DOT 23 TECHNOLOGIES, LLC Wireless prepaid telephone system with dispensable intruments
6169891, Oct 18 1994 AT&T Corp. Method and apparatus for billing of wireless telephone calls
6173181, Nov 07 1997 Google Technology Holdings LLC Method and system for controlling neighbor scanning in a subscriber unit in a cellular communication system
6181935, Sep 27 1996 Unwired Planet, LLC Mobility extended telephone application programming interface and method of use
6188752, Nov 12 1996 Telefonaktiebolaget LM Ericsson Method and apparatus for providing prepaid telecommunications services
6198431, Aug 27 1998 MapTrek LLC; MAPTEK, LLC DBA MAPTREK, LLC Compact GPS tracker and customized mapping system
6199045, Aug 15 1996 SNAP TRACK, INC Method and apparatus for providing position-related information to mobile recipients
6205330, Aug 30 1995 Microsoft Technology Licensing, LLC System and host arrangement for transmission of electronic mail
6208854, May 14 1998 RPX Corporation System and method for routing a call to a called party's landline or wireless communication unit
6223046, Dec 15 1998 Telefonaktiebolaget LM Ericsson (publ) System and method for coordinating notification requests for terminal availability
6226529, Dec 08 1994 Harris Corporation System for providing a simultaneous data and voice channel within a single channel of a portable cellular telephone to provide position-enhanced cellular services (PECS)
6249680, Nov 07 1997 Motorola, Inc; TRAFFICMASTER USA, INC Radio transmitter location finding in CDMA wireless communication systems
6249744, Sep 06 1999 Honda Giken Kogyo Kabushiki Kaisha Motorcycle with navigation system carried thereon
6266614, Dec 24 1997 NEC Corporation Of America Travel guide
6289373, Aug 24 1998 Wilmington Trust, National Association, as Administrative Agent Method of processing E-mail in an automatic call distributor
6314108, Apr 30 1998 UNWIRED PLANET IP MANAGER, LLC; Unwired Planet, LLC Method and apparatus for providing network access over different wireless networks
6317594, Sep 27 1996 Unwired Planet, LLC System and method for providing data to a wireless device upon detection of activity of the device on a wireless network
6321257,
6327479, Sep 22 1997 Nokia Networks Oy Procedure and system for the transmission of a short message in a telecommunication network
6393014, Jun 03 1997 AT&T MOBILITY II LLC Method and system for providing data communication with a mobile station
6396913, Oct 22 1999 NETCRACKER TECHNOLOGY SOLUTIONS INC System and method for processing call detail records
6507589, Apr 30 1998 UNWIRED PLANET IP MANAGER, LLC; Unwired Planet, LLC Method and apparatus for routing between network gateways and service centers
6654786, Apr 30 1998 Unwired Planet, LLC Method and apparatus for informing wireless clients about updated information
6667688, Aug 28 1998 Royal Thoughts, LLC Detection system using personal communication device with response
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Jun 06 2000TeleCommunication Systems Inc.(assignment on the face of the patent)
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